On Spacetime Duality and Bounce Cosmology of a Dual Universe

Mohammed B. Al-Fadhli
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Abstract

The recent Planck Legacy release confirmed the existence of an enhanced lensing amplitude in the cosmic microwave background (CMB) power spectra, which endorses the positive curvature of the early Universe with a confidence level exceeding 99%. In this study, the pre-existing curvature is incorporated to extend the field equations where the derived wave function of the Universe is utilized to model Universe evolution with reference to the scale factor of the early Universe and its radius of curvature upon the emission of the CMB. The wave function reveals both positive and negative solutions, implying that matter and antimatter of early Universe plasma evolve in opposite directions as distinct Universe sides. The wave function indicates that a nascent hyperbolic expansion is followed by a first phase of decelerating expansion away from early plasma during the first 10 Gyr, and then, a second phase of accelerating expansion in reverse directions, whereby both Universe sides free-fall towards each other under gravitational acceleration. Simulations of the predicted conformal curvature evolution demonstrate the fast orbital speed of outer stars owing to the external fields exerted on galaxies as they travel through conformally curved space-time. Finally, the wave function predicts an eventual time-reversal phase comprising rapid spatial contraction that culminates in a Big Crunch, signalling a cyclic Universe. These findings reveal that early plasma could have separated and evolved into distinct sides that collectively and geometrically influencing the Universe evolution, physically explanting the effects attributed to dark matter and energy.
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论二元宇宙的时空对偶性和弹跳宇宙学
最近发布的普朗克遗产证实了宇宙微波背景(CMB)功率谱中透镜振幅增强的存在,其置信度超过99%,支持早期宇宙的正曲率。本研究参照早期宇宙的尺度因子及其在CMB发射时的曲率半径,结合已有曲率对场方程进行扩展,利用导出的宇宙波函数来模拟宇宙演化。波函数揭示了正解和负解,这意味着早期宇宙等离子体的物质和反物质作为不同的宇宙侧面沿相反的方向演化。波函数表明,在最初的10个Gyr期间,新生的双曲膨胀之后是远离早期等离子体的第一阶段减速膨胀,然后是反向加速膨胀的第二阶段,即宇宙两侧在重力加速度下自由落体相向。对预测的共形曲率演化的模拟表明,由于星系在共形弯曲时空中行进时施加的外场,外恒星的轨道速度很快。最后,波函数预测了一个最终的时间反转阶段,包括快速的空间收缩,最终在大紧缩中达到高潮,标志着一个循环的宇宙。这些发现表明,早期的等离子体可能已经分离并演化成不同的侧面,这些侧面在几何上共同影响着宇宙的演化,从物理上解释了暗物质和能量的影响。
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